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A Cellular Model of Neural Map for Sound Location of Barn Ow1

机译:谷仓OW1的声音位置的神经图蜂窝模型

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The sound localization of barn ow1 with respect to horizontal and vertical direction is made based on analysis of the interaural differences in arrival time and intensity of sound, respectively. The neural information processing of detection of interaural intensity difference (IID) is made on the neural pathway parallel with the pathway of interaural time difference (ITD) detection before both the signals arrive at the shell of central nucleus of the inferior colliculus (ICc shell). We have presented a neural model of ITD detection pathway (Inoue et al, Neurocomputing 2001, vol.38-40, pp. 675-682). In the present paper, we present a neuronal model of the nucleus ventralis lemnisci lateralis pars posterior (VLVp) in which the signals of sound intensities coming from both the ears are first combined to be compared with each other. We clarify the functional role of mutual inhibitory connections between both VLVps observed experimentally in detection of IID. Outputs of IID sensitive neurons in both VLVps are projected bilaterally to ICc shell and the connections are inhibitory, whereas outputs of ITD sensitive neurons in ICc core projected to ICc shell are excitatory. It is shown using our neuronal models of ULVps, ICc core, and ICc shell that the neural map, in which ITD and IID are represented along the axes perpendicular mutually, can be generated in ICc shell by the excitatory inputs from ICc core and the inhibitory inputs from bilateral VLVps, as observed experimentally. Then, the mutually inhibitory coupling between both VLVps controls the spatial firing patterns of arrays of IID sensitive neurons in both VLVps so that the neurons only at the site corresponding to the relevant value of IID in the map can fire.
机译:谷仓OW1相对于水平方向和垂直方向上的声源定位是由根据在分别到达时间和声音的强度,耳间差异分析。神经信息检测间强度差(IID)的处理是在神经通路平行耳间时间差(ITD)检测的途径中的由两个信号在下丘(ICC壳)的中央核的壳到达之前。我们已经提出ITD检测途径的神经网络模型(Inoue等,神经计算2001年,vol.38-40,第675-682页)。在本论文中,我们提出的神经元模型中的核腹侧lemnisci外侧睫状后(VLVP),在该声音强度从两个耳朵来的信号被第一结合以彼此进行比较。我们澄清检测IID的实验观察到的两个VLVps之间的相互抑制连接的功能作用。在两个VLVps IID敏感的神经元的输出被双边投影到ICC壳和连接是抑制性的,而ITD敏感神经元的ICC内核输出投射到ICC壳是兴奋性。它是使用我们的ULVps,ICC芯和ICC壳的神经元模型中显示出的是,神经地图,其中ITD和IID沿轴表示垂直相互可以在ICC壳由从ICC芯和抑制兴奋性输入端产生的从双边VLVps输入,实验观察到的。然后,这两个VLVps控件之间的相互抑制耦合在两个VLVps IID敏感神经元的阵列的空间点火模式,使得仅在现场相应于IID的相关值在映射中的神经元可以触发。

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